Inventor profile of:

Horst Diewald

City:

Freising

Country:

Germany

Published Applications:

46

Last publication date:

2025-05-29

Top Assignees for applications by Horst Diewald

The entities that hold a legal rights for patent applications filed by inventor Diewald Horst:

Recent patent applications by Diewald Horst

Horst Diewald from Freising, DE has applied for patents for these inventions. The list has both pending applications and granted patents:

#1 | 2025-05-29
US20250173153A1
Physics

PROCESSOR WITH INSTRUCTION CONCATENATION

#2 | 2024-06-20
US20240201234A1
Physics

TRACKING ENERGY CONSUMPTION USING A BUCK-BOOSTING TECHNIQUE

#3 | 2022-03-10
US20220075626A1
Physics

Processor that executes instruction that specifies instruction concatenation and atomicity

#4 | 2021-06-10
US20210172984A1
Physics

Tracking energy consumption using a buck-boosting technique

#5 | 2020-12-03
US20200381202A1
Electricity

System and method for energy monitoring

#6 | 2019-08-22
US20190257863A1
Physics

Electronic device and method for tracking energy consumption

#7 | 2019-02-07
US20190041435A1
Physics

Tracking energy consumption using a sepic-converter technique

#8 | 2018-07-12
US20180198370A1
Electricity

Tracking energy consumption using a boost-buck technique

#9 | 2018-05-10
US20180129531A1
Physics

Apparatus and method for configuring a microcontroller system

#10 | 2017-07-27
US20170212155A1
Physics

Tracking energy consumption using a buck-boosting technique

#11 | 2017-04-13
US20170102414A1
Physics

Tracking energy consumption using a boost technique

#12 | 2017-01-05
US20170003973A1
Physics

Execution of additional instructions prior to a first instruction in an interruptible or non-interruptible manner as specified in an instruction field

#13 | 2016-11-17
US20160336860A1
Electricity

Tracking energy consumption using a boost-buck technique

#14 | 2016-06-30
US20160188326A1
Physics

Processor with instruction iteration

#15 | 2016-04-28
US20160116514A1
Physics

Tracking energy consumption using a boost-buck technique

#16 | 2016-04-21
US20160109490A1
Physics

Energy tracking circuit

#17 | 2016-03-17
US20160077138A1
Physics

Tracking energy consumption using a sepic-converter technique

#18 | 2016-01-21
US20160018449A1
Physics

Electronic device and method for tracking energy consumption

#19 | 2015-03-12
US20150074636A1
Physics

System and method for energy aware program development

#20 | 2015-03-12
US20150069857A1
Physics

System and method for energy monitoring

#21 | 2015-01-15
US20150019604A1
Physics

FUNCTION ACCELERATOR

#22 | 2015-01-15
US20150015233A1
Physics

Tracking energy consumption using a buck-boosting technique

#23 | 2014-12-18
US20140372733A1
Physics

Processor with inter-execution unit instruction issue

#24 | 2014-12-18
US20140372729A1
Physics

Processor with execution unit wait control

#25 | 2014-11-06
US20140327467A1
Physics

ENERGY TRACKING SYSTEM

#26 | 2014-11-06
US20140327457A1
Physics

Tracking energy consumption using a boost-buck technique

#27 | 2014-10-09
US20140301112A1
Electricity

Tracking energy consumption using a fly-back converter technique

#28 | 2014-10-09
US20140300343A1
Physics

Tracking energy consumption using a sepic-converter technique

#29 | 2014-10-09
US20140300342A1
Physics

Tracking energy consumption using a boost technique

#30 | 2014-09-11
US20140253096A1
Physics

Electronic device and method for tracking energy consumption

#31 | 2014-07-15
US13917805
Physics

Intra-processor resource control

#32 | 2014-07-15
US13917798
Physics

Intra-processor operation control

#33 | 2014-03-27
US20140089646A1
Physics

PROCESSOR WITH INTERRUPTABLE INSTRUCTION EXECUTION

#34 | 2014-03-27
US20140089645A1
Physics

PROCESSOR WITH EXECUTION UNIT INTEROPERATION

#35 | 2014-03-27
US20140089641A1
Physics

Repeated execution of instruction with field indicating trigger event, additional instruction, or trigger signal destination

#36 | 2014-03-27
US20140089640A1
Physics

Processor with variable instruction atomicity

#37 | 2014-03-27
US20140089639A1
Physics

Execution of additional instructions in conjunction atomically as specified in instruction field

#38 | 2014-02-13
US20140047247A1
Physics

Microprocessor unit capable of multiple power modes having a register with direct control bits and register pointer bits for indirect control

#39 | 2013-01-31
US20130031154A1
Physics

Independently timed multiplier

#40 | 2010-09-16
US20100235698A1
Physics

JTAG mailbox

#41 | 2010-07-29
US20100191979A1
Physics

Apparatus and method with controlled switch method

#42 | 2010-07-15
US20100176859A1
Physics

Self-protecting core system

#43 | 2009-11-26
US20090289665A1
Physics

Comparator

#44 | 2009-11-19
US20090284295A1
Electricity

Timer for low-power and high-resolution with low bits derived from set of phase shifted clock signals

#45 | 2009-03-12
US20090067487A1
Electricity

INCREASING PWM RESOLUTION BY MODULATION

#46 | 2005-11-22
US10695602
-

System for processing measuring signals from a sensor

InventorID:

71229 ⎘